Please wait a moment until all data is loaded. This message will disappear when all data is loaded.
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
isethionate + NAD+ = 2-sulfoacetaldehyde + NADH + H+
-
isethionate + NADP+ = 2-sulfoacetaldehyde + NADPH + H+
-
sulfoacetyl-CoA + NADPH + H+ = 2-sulfoacetaldehyde + CoA + NADP+
-
taurine + H2O + bovine heart cytochrome c = 2-sulfoacetaldehyde + NH3 + reduced bovine heart cytochrome c
-
taurine + H2O + ferricyanide = 2-sulfoacetaldehyde + NH3 + ferrocyanide
-
N-methyltaurine + H2O + acceptor = sulfoacetaldehyde + N-methylamine + reduced acceptor
-
taurine + H2O + 2,6-dichlorophenol indophenol = sulfoacetaldehyde + NH3 + reduced 2,6-dichlorophenol indophenol
-
taurine + H2O + acceptor = sulfoacetaldehyde + NH3 + reduced acceptor
-
taurine + H2O + cytochrome c = sulfoacetaldehyde + NH3 + reduced cytochrome c
-
taurine + H2O + phenazine methosulfate = sulfoacetaldehyde + NH3 + reduced phenazine methosulfate
-
4-deoxy-4-sulfo-D-erythrulose + D-glyceraldehyde-3-phosphate = D-xylulose-5-phosphate + sulfoacetaldehyde
-
pyruvate + taurine = L-alanine + 2-oxoethanesulfonic acid
-
taurine + 2-oxoglutarate = 2-sulfoacetaldehyde + L-glutamate
-
taurine + 2-oxoglutarate = sulfoacetaldehyde + L-glutamate
-
taurine + 2-oxobutanoate = 2-sulfoacetaldehyde + 2-aminobutanoate
-
taurine + 2-oxobutyrate = 2-sulfoacetaldehyde + 2-aminobutyrate
-
taurine + 2-oxoglutarate = 2-sulfoacetaldehyde + L-glutamate
-
taurine + butanal = 2-sulfoacetaldehyde + butyl-1-amine
-
taurine + ethanal = 2-sulfoacetaldehyde + ethylamine
-
taurine + glycolaldehyde = 2-sulfoacetaldehyde + ?
-
taurine + glyoxylate = 2-sulfoacetaldehyde + glycine
-
taurine + hexanal = 2-sulfoacetaldehyde + hexyl-1-amine
-
taurine + methanal = 2-sulfoacetaldehyde + methylamine
-
taurine + pentanal = 2-sulfoacetaldehyde + pentylamine
-
taurine + propanal = 2-sulfoacetaldehyde + propyl-1-amine
-
taurine + pyruvate = 2-sulfoacetaldehyde + L-alanine
-
taurine + pyruvate = L-alanine + 2-sulfoacetaldehyde
-
taurine + pyruvate = sulfoacetaldehyde + L-alanine
-
3-sulfopyruvate = 2-sulfoacetaldehyde + CO2
-
sulfopyruvate = sulfoacetaldehyde + CO2
-
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
Enzymatic studies on the metabolism of beta-alanine
1961
Hayaishi, O.; Nishizuka, Y.; Tatibana, M.; Takeshita, M.; Kuno, S.
J. Biol. Chem.
236
781-790
Taurine dehydrogenase
1987
Kondo, H.; Ishimoto, M.
Methods Enzymol.
143
496-499
Purification and some properties of taurine dehydrogenase from a bacterium
1973
Kondo, H.; Kagotani, K.; Oshima, M.; Ishimoto, M.
J. Biochem.
73
1269-1278
Crystalline taurine: alpha-ketoglutarate aminotransferase from Achromobacter superficialis
1972
Toyama, S.; Misono, H.; Soda, K.
Biochem. Biophys. Res. Commun.
46
1374-1379
Taurine-glutamate transaminase
1985
Yonaha, K.; Toyama, S.; Soda, K.
Methods Enzymol.
113
102-108
Occurrence of taurine: alpha-ketoglutarate aminotransferase in bacterial extracts
1972
Toyama, S.; Soda, K.
J. Bacteriol.
109
533-538
Sulphoacetaldehyde acetyltransferase yields acetyl phosphate: purification from Alcaligenes defragrans and gene clusters in taurine degradation
2003
Ruff, J; Denger, K.; Cook, A.M.
Biochem. J.
369
275-285
Enzymatic formation of sulfite and acetate from sulfoacetaldehyde, a degradation product of taurine
1972
Kondo, H.; Ishimoto, M.
J. Biochem.
72
487-489
Purification and properties of sulfoactetate sulfo-lyase, a thiamine pyrophosphate-dependent enzyme forming sulfite and acetate
1975
Kondo, H.; Ishimoto, M.
J. Biochem.
78
317-325
Taurine catabolism. III. Evidence for the participation of the glyoxylate cycle
1980
Shimamoto, G.; Berk, R.S.
Biochim. Biophys. Acta
632
399-407
The role of sulfoacetaldehyde sulfo-lyase in the mineralization of isethionate by an environmental Acinetobacter isolate
1997
King, J.E.; Jaouhari, R.; Quinn, J.P.
Microbiology
143
2339-2343
Biochemical and molecular characterization of taurine:pyruvate transaminase from the anaerobe Bilophila wadsworthia
2000
Laue, H.; Cook, A.M.
Eur. J. Biochem.
267
6841-6848
Dissimilation of the C2 sulfonates
2002
Cook, A.M.; Denger, K.
Arch. Microbiol.
179
1-6
Genetic analysis of a Rhodobacter capsulatus gene region involved in utilization of taurine as a sulfur source
2001
Masepohl, B.; Fuhrer, F.; Klipp, W.
FEMS Microbiol. Lett.
205
105-111
Taurine-sulfur assimilation and taurine-pyruvate aminotransferase activity in anaerobic bacteria
1997
Chien, C.C.; Leadbetter, E.R.; Godchaux, W.III.
Appl. Environ. Microbiol.
63
3021-3024
Identification of the gene encoding sulfopyruvate decarboxylase, an enzyme involved in biosynthesis of coenzyme M
2000
Graupner, M.; Xu, H.; White, R.H.
J. Bacteriol.
182
4862-4867
Sulfoacetaldehyde is excreted quantitatively by Acinetobacter calcoaceticus SW1 during growth with taurine as sole source of nitrogen
2005
Weinitschke, S.; von Rekowski, K.S.; Denger, K.; Cook, A.M.
Microbiology
151
1285-1290
Sulfoacetate generated by Rhodopseudomonas palustris from taurine
2004
Denger, K.; Weinitschke, S.; Hollemeyer, K.; Cook, A.M.
Arch. Microbiol.
182
254-258
Sulfoacetate released during the assimilation of taurine-nitrogen by Neptuniibacter caesariensis: purification of sulfoacetaldehyde dehydrogenase
2008
Krejcik, Z.; Denger, K.; Weinitschke, S.; Hollemeyer, K.; Paces, V.; Cook, A.M.; Smits, T.H.
Arch. Microbiol.
190
159-168
Inducible transcription of genes involved in taurine uptake and dissimilation by Silicibacter pomeroyi DSS-3T
2006
Gorzynska, A.K.; Denger, K.; Cook, A.M.; Smits, T.H.
Arch. Microbiol.
185
402-406
Bifurcated degradative pathway of 3-sulfolactate in Roseovarius nubinhibens ISM via sulfoacetaldehyde acetyltransferase and (S)-cysteate sulfolyase
2009
Denger, K.; Mayer, J.; Buhmann, M.; Weinitschke, S.; Smits, T.H.; Cook, A.M.
J. Bacteriol.
191
5648-5656
Homotaurine metabolized to 3-sulfopropanoate in Cupriavidus necator H16: enzymes and genes in a patchwork pathway
2009
Mayer, J.; Cook, A.M.
J. Bacteriol.
191
6052-6058
2,3-Dihydroxypropane-1-sulfonate degraded by Cupriavidus pinatubonensis JMP134: purification of dihydroxypropanesulfonate 3-dehydrogenase
2010
Mayer, J.; Huhn, T.; Habeck, M.; Denger, K.; Hollemeyer, K.; Cook, A.M.
Microbiology
156
1556-1564
Sulfoacetate is degraded via a novel pathway involving sulfoacetyl-CoA and sulfoacetaldehyde in Cupriavidus necator H16
2010
Weinitschke, S.; Hollemeyer, K.; Kusian, B.; Bowien, B.; Smits, T.H.; Cook, A.M.
J. Biol. Chem.
285
35249-35254
Isethionate formation from taurine in Chromohalobacter salexigens: purification of sulfoacetaldehyde reductase
2010
Krejcík, Z.; Hollemeyer, K.; Smits, T.H.; Cook, A.M.
Microbiology
156
1547-1555
(R)-Cysteate-nitrogen assimilation by Cupriavidus necator H16 with excretion of 3-sulfolactate: a patchwork pathway
2012
Mayer, J.; Denger, K.; Hollemeyer, K.; Schleheck, D.; Cook, A.M.
Arch. Microbiol.
194
949-957
Molecular genetics and biochemistry of N-acetyltaurine degradation by Cupriavidus necator H16
2011
Denger, K.; Lehmann, S.; Cook, A.M.
Microbiology
157
2983-2991
A pathway for isethionate dissimilation in Bacillus krulwichiae
2019
Tong, Y.; Wei, Y.; Hu, Y.; Ang, E.L.; Zhao, H.; Zhang, Y.
Appl. Environ. Microbiol.
85
e00793-19
Radical-mediated C-S bond cleavage in C2 sulfonate degradation by anaerobic bacteria
2019
Xing, M.; Wei, Y.; Zhou, Y.; Zhang, J.; Lin, L.; Hu, Y.; Hua, G.; N. Nanjaraj Urs, A.; Liu, D.; Wang, F.; Guo, C.; Tong, Y.; Li, M.; Liu, Y.; Ang, E.; Zhao, H.; Yuchi, Z.; Zhang, Y.
Nat. Commun.
10
1609
A glycyl radical enzyme enables hydrogen sulfide production by the human intestinal bacterium Bilophila wadsworthia
2019
Peck, S.C.; Denger, K.; Burrichter, A.; Irwin, S.M.; Balskus, E.P.; Schleheck, D.
Proc. Natl. Acad. Sci. USA
116
3171-3176
Biochemical and structural investigation of sulfoacetaldehyde reductase from Klebsiella oxytoca
2019
Zhou, Y.; Wei, Y.; Lin, L.; Xu, T.; Ang, E.L.; Zhao, H.; Yuchi, Z.; Zhang, Y.
Biochem. J.
476
733-746
New structural insights into bacterial sulfoacetaldehyde and taurine metabolism
2020
Rohwerder, T.
Biochem. J.
477
1367-1371
Identification and characterization of a new sulfoacetaldehyde reductase from the human gut bacterium Bifidobacterium kashiwanohense
2019
Zhou, Y.; Wei, Y.; Nanjaraj Urs, A.N.; Lin, L.; Xu, T.; Hu, Y.; Ang, E.L.; Zhao, H.; Yuchi, Z.; Zhang, Y.
Biosci. Rep.
39
BSR20190715
-
Mechanistically diverse pathways for sulfoquinovose degradation in bacteria
2021
Liu, J.; Wei, Y.; Ma, K.; An, J.; Liu, X.; Liu, Y.; Ang, E.; Zhao, H.; Zhang, Y.
ACS Catal.
11
14740-14750